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骨钙素诱导的肾间质类成骨微环境有助于 Randall 斑块的形成。

Osteogenic-Like Microenvironment of Renal Interstitium Induced by Osteomodulin Contributes to Randall's Plaque Formation.

机构信息

Department of Urology, Xiangya Hospital, Central South University, Changsha, Hunan, 410008, China.

National Clinical Research Center for Geriatric Disorders, Xiangya Hospital, Central South University, Changsha, Hunan, 410008, China.

出版信息

Adv Sci (Weinh). 2024 Oct;11(40):e2405875. doi: 10.1002/advs.202405875. Epub 2024 Sep 3.

Abstract

Calcium oxalate (CaOx) kidney stones are common and recurrent, lacking pharmacological prevention. Randall's plaques (RPs), calcium deposits in renal papillae, serve as niduses for some CaOx stones. This study explores the role of osteogenic-like cells in RP formation resembling ossification. CaP crystals deposit around renal tubules, interstitium, and blood vessels in RP tissues. Human renal interstitial fibroblasts (hRIFs) exhibit the highest osteogenic-like differentiation potential compared to chloride voltage-gated channel Ka positive tubular epithelial cells, aquaporin 2 positive collecting duct cells, and vascular endothelial cells, echoing the upregulated osteogenic markers primarily in hRIFs within RP tissues. Utilizing RNA-seq, osteomodulin (OMD) is found to be upregulated in hRIFs within RP tissues and hRIFs following osteogenic induction. Furthermore, OMD colocalizes with CaP crystals and calcium vesicles within RP tissues. OMD can enhance osteogenic-like differentiation of hRIFs in vitro and in vivo. Additionally, crystal deposits are attenuated in mice with Omd deletion in renal interstitial fibroblasts following CaOx nephrocalcinosis induction. Mechanically, a positive feedback loop of OMD/BMP2/BMPR1A/RUNX2/OMD drives hRIFs to adopt osteogenic-like fates, by which OMD induces osteogenic-like microenvironment of renal interstitium to participate in RP formation. We identify OMD upregulation as a pathological feature of RP, paving the way for preventing CaOx stones.

摘要

草酸钙(CaOx)肾结石很常见且容易复发,缺乏药理学预防措施。 Randall 斑块(RPs)是肾乳头的钙沉积,是一些 CaOx 结石的核心。本研究探讨了成骨样细胞在类似于骨化的 RP 形成中的作用。 CaP 晶体沉积在 RP 组织中的肾小管、间质和血管周围。与氯电压门控通道 Ka 阳性管状上皮细胞、水通道蛋白 2 阳性集合管细胞和血管内皮细胞相比,人肾间质成纤维细胞(hRIFs)表现出最高的成骨样分化潜能,这反映了 RP 组织中 hRIFs 中上调的成骨标志物主要为 hRIFs。利用 RNA-seq,发现成骨调节蛋白(OMD)在 RP 组织和诱导成骨后的 hRIFs 中上调。此外,OMD 在 RP 组织内与 CaP 晶体和钙囊泡共定位。OMD 可以增强 hRIFs 的体外和体内成骨样分化。此外,在 CaOx 肾钙质沉着症诱导后,OMD 在肾间质成纤维细胞中缺失的小鼠中,晶体沉积减少。从机制上讲,OMD/BMP2/BMPR1A/RUNX2/OMD 的正反馈环促使 hRIFs 采用成骨样命运,其中 OMD 诱导肾间质的成骨样微环境参与 RP 的形成。我们将 OMD 的上调鉴定为 RP 的病理特征,为预防 CaOx 结石铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a6a/11516157/623bb39e6313/ADVS-11-2405875-g009.jpg

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